mirror of
https://github.com/ceph/ceph-csi.git
synced 2024-12-22 13:00:19 +00:00
e3bf375035
update kubernetes to latest v1.25.0 release. Signed-off-by: Madhu Rajanna <madhupr007@gmail.com>
284 lines
7.9 KiB
Go
284 lines
7.9 KiB
Go
/*
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Copyright 2021 The Kubernetes Authors.
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Licensed under the Apache License, Version 2.0 (the "License");
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you may not use this file except in compliance with the License.
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You may obtain a copy of the License at
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http://www.apache.org/licenses/LICENSE-2.0
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Unless required by applicable law or agreed to in writing, software
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distributed under the License is distributed on an "AS IS" BASIS,
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WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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See the License for the specific language governing permissions and
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limitations under the License.
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*/
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package api
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import (
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"fmt"
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"regexp"
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"strconv"
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"strings"
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"unicode"
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"k8s.io/apimachinery/pkg/util/validation/field"
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"k8s.io/component-base/version"
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)
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type Version struct {
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major int
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minor int
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latest bool
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}
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func (v Version) String() string {
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if v.latest {
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return "latest"
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}
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return fmt.Sprintf("v%d.%d", v.major, v.minor)
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}
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// Older returns true if this version v is older than the other.
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func (v *Version) Older(other Version) bool {
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if v.latest { // Latest is always consider newer, even than future versions.
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return false
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}
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if other.latest {
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return true
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}
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if v.major != other.major {
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return v.major < other.major
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}
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return v.minor < other.minor
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}
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func (v *Version) Major() int {
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return v.major
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}
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func (v *Version) Minor() int {
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return v.minor
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}
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func (v *Version) Latest() bool {
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return v.latest
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}
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func MajorMinorVersion(major, minor int) Version {
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return Version{major: major, minor: minor}
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}
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// GetAPIVersion get the version of apiServer and return the version major and minor
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func GetAPIVersion() Version {
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var err error
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v := Version{}
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apiVersion := version.Get()
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major, err := strconv.Atoi(apiVersion.Major)
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if err != nil {
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return v
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}
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// split the "normal" + and - for semver stuff to get the leading minor number
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minorString := strings.FieldsFunc(apiVersion.Minor, func(r rune) bool {
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return !unicode.IsDigit(r)
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})[0]
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minor, err := strconv.Atoi(minorString)
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if err != nil {
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return v
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}
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v = MajorMinorVersion(major, minor)
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return v
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}
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func LatestVersion() Version {
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return Version{latest: true}
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}
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// ParseLevel returns the level that should be evaluated.
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// level must be "privileged", "baseline", or "restricted".
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// if level does not match one of those strings, "restricted" and an error is returned.
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func ParseLevel(level string) (Level, error) {
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switch Level(level) {
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case LevelPrivileged, LevelBaseline, LevelRestricted:
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return Level(level), nil
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default:
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return LevelRestricted, fmt.Errorf(`must be one of %s`, strings.Join(validLevels, ", "))
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}
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}
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// Valid checks whether the level l is a valid level.
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func (l *Level) Valid() bool {
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switch *l {
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case LevelPrivileged, LevelBaseline, LevelRestricted:
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return true
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default:
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return false
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}
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}
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var versionRegexp = regexp.MustCompile(`^v1\.([0-9]|[1-9][0-9]*)$`)
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// ParseVersion returns the policy version that should be evaluated.
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// version must be "latest" or "v1.x".
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// If version does not match one of those patterns, the latest version and an error is returned.
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func ParseVersion(version string) (Version, error) {
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if version == "latest" {
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return Version{latest: true}, nil
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}
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match := versionRegexp.FindStringSubmatch(version)
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if len(match) != 2 {
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return Version{latest: true}, fmt.Errorf(`must be "latest" or "v1.x"`)
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}
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versionNumber, err := strconv.Atoi(match[1])
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if err != nil || versionNumber < 0 {
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return Version{latest: true}, fmt.Errorf(`must be "latest" or "v1.x"`)
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}
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return Version{major: 1, minor: versionNumber}, nil
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}
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type LevelVersion struct {
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Level
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Version
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}
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func (lv LevelVersion) String() string {
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return fmt.Sprintf("%s:%s", lv.Level, lv.Version)
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}
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// Equivalent determines whether two LevelVersions are functionally equivalent. LevelVersions are
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// considered equivalent if both are privileged, or both levels & versions are equal.
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func (lv *LevelVersion) Equivalent(other *LevelVersion) bool {
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return (lv.Level == LevelPrivileged && other.Level == LevelPrivileged) ||
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(lv.Level == other.Level && lv.Version == other.Version)
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}
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type Policy struct {
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Enforce LevelVersion
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Audit LevelVersion
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Warn LevelVersion
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}
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func (p *Policy) String() string {
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return fmt.Sprintf("enforce=%#v, audit=%#v, warn=%#v", p.Enforce, p.Audit, p.Warn)
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}
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// CompactString prints a minimalist representation of the policy that excludes any privileged
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// levels.
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func (p *Policy) CompactString() string {
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sb := strings.Builder{}
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if p.Enforce.Level != LevelPrivileged {
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sb.WriteString("enforce=")
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sb.WriteString(p.Enforce.String())
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}
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if p.Audit.Level != LevelPrivileged {
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if sb.Len() > 0 {
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sb.WriteString(", ")
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}
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sb.WriteString("audit=")
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sb.WriteString(p.Audit.String())
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}
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if p.Warn.Level != LevelPrivileged {
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if sb.Len() > 0 {
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sb.WriteString(", ")
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}
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sb.WriteString("warn=")
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sb.WriteString(p.Warn.String())
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}
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if sb.Len() == 0 {
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// All modes were privileged, just output "privileged".
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return string(LevelPrivileged)
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}
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return sb.String()
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}
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// Equivalent determines whether two policies are functionally equivalent. Policies are considered
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// equivalent if all 3 modes are considered equivalent.
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func (p *Policy) Equivalent(other *Policy) bool {
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return p.Enforce.Equivalent(&other.Enforce) && p.Audit.Equivalent(&other.Audit) && p.Warn.Equivalent(&other.Warn)
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}
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// FullyPrivileged returns true if all 3 policy modes are privileged.
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func (p *Policy) FullyPrivileged() bool {
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return p.Enforce.Level == LevelPrivileged &&
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p.Audit.Level == LevelPrivileged &&
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p.Warn.Level == LevelPrivileged
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}
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// PolicyToEvaluate resolves the PodSecurity namespace labels to the policy for that namespace,
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// falling back to the provided defaults when a label is unspecified. A valid policy is always
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// returned, even when an error is returned. If labels cannot be parsed correctly, the values of
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// "restricted" and "latest" are used for level and version respectively.
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func PolicyToEvaluate(labels map[string]string, defaults Policy) (Policy, field.ErrorList) {
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var (
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err error
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errs field.ErrorList
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p = defaults
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)
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if len(labels) == 0 {
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return p, nil
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}
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if level, ok := labels[EnforceLevelLabel]; ok {
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p.Enforce.Level, err = ParseLevel(level)
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errs = appendErr(errs, err, EnforceLevelLabel, level)
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}
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if version, ok := labels[EnforceVersionLabel]; ok {
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p.Enforce.Version, err = ParseVersion(version)
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errs = appendErr(errs, err, EnforceVersionLabel, version)
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}
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if level, ok := labels[AuditLevelLabel]; ok {
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p.Audit.Level, err = ParseLevel(level)
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errs = appendErr(errs, err, AuditLevelLabel, level)
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if err != nil {
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p.Audit.Level = LevelPrivileged // Fail open for audit.
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}
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}
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if version, ok := labels[AuditVersionLabel]; ok {
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p.Audit.Version, err = ParseVersion(version)
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errs = appendErr(errs, err, AuditVersionLabel, version)
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}
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if level, ok := labels[WarnLevelLabel]; ok {
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p.Warn.Level, err = ParseLevel(level)
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errs = appendErr(errs, err, WarnLevelLabel, level)
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if err != nil {
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p.Warn.Level = LevelPrivileged // Fail open for warn.
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}
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}
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if version, ok := labels[WarnVersionLabel]; ok {
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p.Warn.Version, err = ParseVersion(version)
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errs = appendErr(errs, err, WarnVersionLabel, version)
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}
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return p, errs
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}
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// CompareLevels returns an integer comparing two levels by strictness. The result will be 0 if
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// a==b, -1 if a is less strict than b, and +1 if a is more strict than b.
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func CompareLevels(a, b Level) int {
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if a == b {
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return 0
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}
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switch a {
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case LevelPrivileged:
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return -1
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case LevelRestricted:
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return 1
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default:
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if b == LevelPrivileged {
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return 1
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} else if b == LevelRestricted {
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return -1
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}
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}
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// This should only happen if both a & b are invalid levels.
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return 0
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}
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var labelsPath = field.NewPath("metadata", "labels")
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// appendErr is a helper function to collect label-specific errors.
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func appendErr(errs field.ErrorList, err error, label, value string) field.ErrorList {
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if err != nil {
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return append(errs, field.Invalid(labelsPath.Key(label), value, err.Error()))
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}
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return errs
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}
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